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Optical information recording medium

a technology of optical information and recording medium, which is applied in the field can solve the problems of increasing the cost of optical recording apparatus, affecting the stability of optical information recording medium in which dye is dispersed in the recording layer, and affecting the stability of optical information recording apparatus, so as to increase the number of recording layers and increase storage capacity.

Active Publication Date: 2016-08-02
FUJIFILM CORP
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

[0009]In view of the above, it is an object of the present invention to provide an optical information recording medium which excels in long-term stability and in which information can be recorded using a laser having a small peak power.
[0025]With this configuration, since the light reflectivity of this interface is substantially zero, in the case of multi-layered recording layers, the light beam can reach far deeper recording layers from the recording / reading beam radiation side. This is advantageous for increasing the storage capacity by increasing the number of recording layers.

Problems solved by technology

The dye dispersed in the polymer binder in the recording layer may disadvantageously spread into an adjacent layer such as an intermediate layer with the lapse of time.
Therefore, the optical information recording medium in which the dye is dispersed in the recording layers may suffer from a problem in stability, e.g., for preserving the properties during a long-term storage.
This leads to a problem such as an increase in the cost of an optical recording apparatus.

Method used

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Examples

Experimental program
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Effect test

example 1

(1) Formation of First Intermediate Layer (Recording Layer Support Layer)

[0116]Ultraviolet curable resin (SD-640 manufactured by DIC Corporation, Tg=86° C.) was applied to a glass substrate (diameter: 120 mm, thickness: 1 mm) by spin coating to make a layer of 20 μm thickness. The ultraviolet curable resin was cured by irradiation with ultraviolet light to thereby form an intermediate layer (recording layer support layer).

(2) Formation of Recording Layer

[0117]The compound A was diluted with PGMEA (propyleneglycol monomethylether acetate), so that a coating liquid with a solid content concentration of 13 mass % was prepared. The coating liquid was applied onto the first intermediate layer by spin coating to form a recording layer having a thickness of 1 μm. The concentration of the compound A in the coating liquid was adjusted such that the light absorptance of the recording layer having a thickness of 1 μm became 8%.

(3) Formation of Second Intermediate Layer (Adhesive Agent Layer)

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example 2

(1) Formation of First Intermediate Layer (Recording Layer Support Layer)

[0124]A first intermediate layer (recording layer support layer) was formed by the same method as disclosed in the above Example 1.

(2) Formation of Recording Layer

[0125]The compound C was diluted with PGMEA (propyleneglycol monomethylether acetate), so that a coating liquid with a solid content concentration of 13 mass % was prepared. The coating liquid was applied onto the first intermediate layer by spin coating to form a recording layer having a thickness of 1 μm. The concentration of the compound C in the coating liquid was adjusted such that the light absorptance of the recording layer having a thickness of 1 μm became 8%.

(3) Formation of Second Intermediate Layer (Adhesive Agent Layer)

[0126]A second intermediate layer (adhesive agent layer) was formed by the same method as disclosed in the above Example 1.

(4) Formation of Cover Layer

[0127]A cover layer was formed by the same method as disclosed in the abo...

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Abstract

An optical information recording medium includes at least one recording layer. The recording layer includes a recording material comprising a polymer compound to which a one-photon absorption dye is bonded, and a coupling strength Δ2 between the one-photon absorption dye and the polymer compound in the recording material is higher than a coupling strength estimated to be exerted between the same one-photon absorption dye and the same polymer compound if the one-photon absorption dye is dispersed in the polymer compound in the recording material.

Description

CROSS-REFERENCE TO RELATED APPLICATION(S)[0001]This application is a continuation application of International Application No. PCT / JP2014 / 051305 filed on Jan. 22, 2014, which claims priority to Japanese Patent Application No. 2013-046153 filed on Mar. 8, 2013, the disclosures of which are incorporated herein by reference in their entireties.TECHNICAL FIELD[0002]The present invention relates to an optical information recording medium comprising a recording layer including a polymer compound.BACKGROUND ART[0003]As an optical information recording medium comprising recording layers and intermediate layers, for example, Patent Literature 1 to Patent Literature 3 disclose recording media each comprising a recording layer including a polymer compound (polymer binder) and a dye dispersed in the polymer binder. The Patent Literature 1 teaches an optical information recording medium comprising a large number of recording layers each of which preferably includes a multi-photon absorption dye ...

Claims

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Application Information

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Patent Type & Authority Patents(United States)
IPC IPC(8): G11B7/24C08F220/18C08F226/06G11B7/246G11B7/24038G11B7/245G11B7/256G11B7/2405
CPCG11B7/24038G11B7/245G11B7/246C08F220/18C08F226/06G11B7/2405G11B7/256C09D4/00C08F220/1807C08F220/36
Inventor MOCHIZUKI, HIDEHIROWATANABE, TETSUYASASAKI, TOSHIOMIKAMI, TATSUONAKAMURA, TAKUMI
Owner FUJIFILM CORP
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